Yang Shengzhi, Fan Zhenxin, Li Jiawei, Wang Xinqi, Lan Yue, Yue Bisong, He Miao, Zhang Anyun, Li Jing
Key Laboratory of Bioresources and Eco-Environment (Ministry of Education), College of Life Sciences, Sichuan University, Chengdu, Sichuan, China.
Sichuan Key Laboratory of Conservation Biology on Endangered Wildlife, College of Life Sciences, Sichuan University, Chengdu, Sichuan, China.
Gut Microbes. 2023 Jan-Dec;15(1):2188848. doi: 10.1080/19490976.2023.2188848.
Rhesus macaque (RM, ), as an important model animal, commonly suffers from chronic diarrheal disease, challenging the breeding of RMs. Gut microbiomes play key roles in maintaining intestinal health of RMs. However, it is still unclear about more features of gut microbiome as responsible for intestinal health of RMs. In this study, we performed de novo assembly of metagenome-assembled genomes (MAGs) based on fecal metagenomes from chronic diarrheal RMs and asymptomatic individuals. In total of 731 non-redundant MAGs with at least 80% completeness were reconstructed in this study. More than 97% MAGs were novel genomes compared with more than 250,000 reference genomes. MAGs of and Helicobacteraceae from RM guts mainly carried flagella-associated virulence genes and chemotaxis-associated virulence genes, which might mediate motility and adhesion of bacteria. Comparing to MAGs of from humans, distributions and functions of these MAGs of from RMs exhibited significant differences. Most members of Bacteroidota, Spirochaetota, Helicobacteraceae, Lactobacillaceae and significantly decreased in guts of chronic diarrhea RMs. More than 92% MAGs in this study were not contained in 2,985 MAGs previously reported from other 22 non-human primates (NHPs), expanding the microbial diversity in guts of NHPs. The distributions and functions of gut microbiome were prominently influenced by host phylogeny of NHPs. Our results could help to more clearly understand about the diversity and function of RMs gut microbiome.
恒河猴(RM)作为一种重要的模式动物,常患慢性腹泻疾病,这对恒河猴的繁殖构成挑战。肠道微生物群在维持恒河猴的肠道健康中发挥着关键作用。然而,关于肠道微生物群在恒河猴肠道健康方面的更多特征仍不清楚。在本研究中,我们基于慢性腹泻恒河猴和无症状个体的粪便宏基因组进行了宏基因组组装基因组(MAG)的从头组装。本研究共重建了731个完整性至少为80%的非冗余MAG。与超过250,000个参考基因组相比,超过97%的MAG是新基因组。恒河猴肠道中的弯曲菌科和螺杆菌科的MAG主要携带与鞭毛相关的毒力基因和与趋化性相关的毒力基因,这可能介导细菌的运动和黏附。与人类的弯曲菌科MAG相比,恒河猴的这些弯曲菌科MAG的分布和功能存在显著差异。拟杆菌门、螺旋体门、螺杆菌科、乳杆菌科和弯曲菌科的大多数成员在慢性腹泻恒河猴的肠道中显著减少。本研究中超过92%的MAG未包含在先前报道的来自其他22种非人类灵长类动物(NHP)的2985个MAG中,这扩展了非人类灵长类动物肠道中的微生物多样性。肠道微生物群的分布和功能受到非人类灵长类动物宿主系统发育的显著影响。我们的结果有助于更清楚地了解恒河猴肠道微生物群的多样性和功能。